36 Results for "

β-cell function

" in MedChemExpress (MCE) Product Catalog:
Products (36)

36 Results for "β-cell function" in MCE Product Catalog:

115
115 Publications Verification
Cat. No.: HY-10231
CAS No.: 685898-44-6
Purity:  ≥98.0%
PX-478 is a multifunctional HIF-1α inhibitor with properties including radiosensitization, autophagy activation, and lipid accumulation inhibition. PX-478 also blocks hypoxia-induced VEGF production and regulates β-cell phenotypes under hypoxic conditions. PX-478 induces cell cycle arrest and DNA damage, restores autophagic function, reduces foam cell formation, and maintains glucose homeostasis. PX-478 is widely used in research on related diseases such as human tumors (e.g., prostate cancer), type 2 diabetes, and atherosclerosis .
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72
72 Cited Publications
Cat. No.: HY-13443A
CAS No.: 914454-01-6
Purity:  99.91%
Synonyms: Exenatide acetate
Exendin-4 acetate (Exenatide acetate) is an orally active, blood-brain barrier-permeable glucagon-like peptide-1 receptor (GLP‑1 receptor) agonist that resists degradation mediated by dipeptidyl peptidase IV. Exendin-4 acetate mediates multiple glucose-regulating effects, including stimulation of glucose-dependent insulin secretion, inhibition of glucagon production, increase in β-cell mass, delay of gastric emptying, reduction of food intake, improvement of peripheral insulin sensitivity, and restoration of normal islet structure. Exendin-4 acetate inhibits oxidative stress, alleviates inflammatory responses, and reduces neuronal apoptosis. Exendin-4 acetate reduces the aggregation level of mutant huntingtin, improves motor function, prolongs survival time, and regulates the expression levels of leptin and ghrelin. Exendin-4 acetate can be used in research related to type 2 diabetes, acute ischemic stroke, and Huntington's disease .
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72
72 Cited Publications
Cat. No.: HY-13443
CAS No.: 141758-74-9
Purity:  99.95%
Synonyms: Exenatide
Exendin‑4 (Exenatide) is an orally active, blood-brain barrier-permeable glucagon-like peptide-1 receptor (GLP‑1 receptor) agonist that resists degradation mediated by dipeptidyl peptidase IV. Exendin‑4 mediates multiple glucose-regulating effects, including stimulation of glucose-dependent insulin secretion, inhibition of glucagon production, increase in β-cell mass, delay of gastric emptying, reduction of food intake, improvement of peripheral insulin sensitivity, and restoration of normal islet structure. Exendin‑4 inhibits oxidative stress, alleviates inflammatory responses, and reduces neuronal apoptosis. Exendin‑4 reduces the aggregation level of mutant huntingtin, improves motor function, prolongs survival time, and regulates the expression levels of leptin and ghrelin. Exendin‑4 can be used in research related to type 2 diabetes, acute ischemic stroke, and Huntington's disease .
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3
3 Cited Publications
Cat. No.: HY-109030
CAS No.: 1191995-00-2
Purity:  99.87%
Synonyms: HMS5552
Target:  

Glucokinase

Research Areas:  

Metabolic Disease

Dorzagliatin (HMS5552), a dual-acting glucokinase (GK) activator, improves glycaemic control and pancreatic β-cell function in type 2 diabetes .
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3
3 Cited Publications
Cat. No.: HY-15564
CAS No.: 733750-99-7
Purity:  99.58%
Target:  

GPR119

Research Areas:  

Metabolic Disease

AR 231453 is a potent, specific and orally available GPR119 agonist. AR 231453 can stimulate β-cell replication and improve islet graft function s .
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2
2 Cited Publications
Cat. No.: HY-N0887
CAS No.: 84676-88-0
Synonyms: Isoastragaloside-I
Isoastragaloside I is a natural compound found in Astragalus membranaceus, with oral activity and multiple biological activities such as anti-inflammatory and antioxidant properties. Isoastragaloside I inhibits Akt, NF-κB, MAPKs and PI3K, enhances the activity of hepatic FXR, regulates the TGF-β/Smads signaling pathway, and upregulates antioxidant molecules downstream of Nrf2. Isoastragaloside I inhibits the expression of NO, TNF-α, iNOS, COX-2, IL-1β and VCAM-1, and reduces intracellular ROS levels. Isoastragaloside I attenuates blood-brain barrier disruption, restores intestinal barrier function, increases β-cell mass, improves glucose homeostasis, and elevates circulating adiponectin levels. Isoastragaloside I can be used for the study of neuroinflammation-related neurodegenerative diseases, cholestatic liver disease, and diabetes .
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1
1 Cited Publications
Cat. No.: HY-P99222
CAS No.: 876387-05-2
Synonyms: MGA-031; PRV-031

Target:  

CD3

Teplizumab (MGA-031) is a Fc receptor non-binding anti-human CD3 monoclonal antibody. Teplizumab reduces the loss of beta-cell function. Teplizumab can be used in the research of type 1 diabetes .
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1
1 Cited Publications
Cat. No.: HY-W012985
CAS No.: 600-22-6
Methyl pyruvate is a p53/p21 axis inhibitor, intrinsic apoptosis inhibitor, cytotoxic agent, ATP production enhancer, proteasome function restorer, TDP-43 localization normalizer, ATP-sensitive potassium (K +ATP) channel inhibitor, depolarizer, and insulin secretagogue .Methyl pyruvate turns off apoptotic pathways, induces cancer cell death, acts as a substrate for dimeric dihydrodiol dehydrogenase, enhances TCA cycle activity, rescues proteasome impairment and TDP-43 mislocalization, inhibits K +ATP channels independent of ATP, depolarizes pancreatic β-cell membranes, modulates insulin secretion, and enters pancreatic β-cell mitochondria via a specific transporter .Methyl pyruvate can be used for the research of lung adenocarcinoma, ovarian clear cell adenocarcinoma, breast adenocarcinoma, amyotrophic lateral sclerosis, and type II diabetes .
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Cat. No.: HY-150105
CAS No.: 2448172-22-1
Purity:  98.72%
Synonyms: BMF-219; Menin-MLL inhibitor 21
Icovamenib (BMF-219) is a selective, orally active, irreversible Menin inhibitor. Icovamenib forms a stable and irreversible covalent bond with Menin. Icovamenib promotes selective and controlled proliferation of beta cells and improvement of beta cell function in ex vivo human islet cultures. Icovamenib enhances glycemic control in animal diabetic models. Icovamenib induces a dose-dependent enhancement in insulin secretion potentiated by the GLP-1 RA. Icovamenib can be used for the study of multiple hematologic malignancies, solid tumors, and diabetes mellitus, such as diffuse large B-cell lymphoma (DLBCL), multiple myeloma (MM) and chronic lymphocytic leukemia and type 2 diabetes .
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Cat. No.: HY-106288
CAS No.: 172867-62-8
Purity:  99.05%
Target:  

PTHR

Research Areas:  

Cancer

Human PTHrP-(1-36) is a secretory form of PTHrP with anticalciuric effects. Human PTHrP-(1-36) enhances beta cell function and proliferation. Human PTHrP-(1-36) can be used in the research of humoral hypercalcemia of malignancy (HHM) and hyperparathyroidism .
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Cat. No.: HY-19694
CAS No.: 1137359-47-7
Target:  

Insulin Receptor

Research Areas:  

Endocrinology

BRD7552, a potent PDX1 transcription factor inducer, upregulates PDX1 expression in both primary human islets and ductal cells, and induces epigenetic changes in the PDX1 promoter consistent with transcriptional activation. BRD7552 increases insulin expression. PDX1 is a key transcription factor involved in pancreas development and β cell function .
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Cat. No.: HY-P10018
CAS No.: 1596343-09-7
Synonyms: SAR425899
Target:  

GLP Receptor GCGR

Research Areas:  

Metabolic Disease

Bamadutide (SAR425899) is a potent dual glucagon-like peptide-1 receptor/glucagon receptor (GLP-1R/GCGR) agonist. Bamadutide improves post-meal blood glucose control by significantly enhancing β-cell function and slowing down the rate of glucose absorption in the body. Bamadutide can be used for the research of metabolic diseases such as type 2 diabetes .
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Cat. No.: HY-W010649
CAS No.: 288-14-2
Isoxazole is a member of the five-membered heterocycle drug scaffold. Isoxazole has been used as a BET bromodomain inhibitor and can improve β-cell function in a diabetic mouse model. Isoxazole and its derivatives exhibit broad biological activities (such as antimicrobial, antibacterial, antifungal, antiviral, anticancer, anti-inflammatory, immunomodulatory, analgesic, anti-tuberculosis, and anti-diabetic effects). For example, the bicyclic Isoxazole can act as an HSP90 inhibitor, and the tricyclic Isoxazole is promising as a selective multidrug resistance protein (MRP1) inhibitor​ .
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Cat. No.: HY-17445
CAS No.: 331741-94-7
Synonyms: BMS-298585
Target:  

PPAR

Muraglitazar (BMS-298585) is an orally active non-thiazolidinedione oxybenzylglycine dual-target PPARα/PPARγ agonist, with an IC50 of 0.25 μM and an EC50 of 0.32 μM against human PPARα, and an IC50 of 0.19 μM and an EC50 of 0.11 μM against human PPARγ. Muraglitazar regulates lipid homeostasis, enhances peripheral insulin sensitivity, and improves β-cell function. Muraglitazar reduces levels of blood glucose, insulin, triglycerides and free fatty acids, normalizes adiponectin and corticosterone levels, promotes cholesterol efflux, reduces hepatic lipid content, regulates body weight, prevents hyperglycemia, and improves glucose tolerance. Muraglitazar can be used in research related to type 2 diabetes and dyslipidemia .
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Cat. No.: HY-129297
CAS No.: 86879-39-2
Purity:  99.57%
CMPF can be found in trace constituent of urine and blood. CMPF is a biomarker of type 2 diabetes. CMPF can act on the β cell and induces impaired mitochondrial function. CMPF decreases glucose-induced ATP accumulation, and induces oxidative stress. CMPF reverses hepatic lipid accumulation and improves insulin sensitivity in obese mice .
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Cat. No.: HY-P10341
CAS No.: 1345835-12-2
Target:  

GCGR

Research Areas:  

Metabolic Disease

ZP3022 is a dual agonist of glucagon-like peptide-1 (GLP-1) and gastrin that has the ability to sustainably improve glycemic control. Additionally, ZP3022 can effectively increase β-cell mass, promote β-cell proliferation, and enhance the function of pancreatic islets. ZP3022 can be used in anti-diabetic research .
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Cat. No.: HY-W015229R
CAS No.: 830-96-6
Synonyms: Indole-3-propionic acid (Standard); 3-IPA (Standard)
3-Indolepropionic acid (Standard) is the analytical standard of 3-Indolepropionic acid. This product is intended for research and analytical applications. 3-Indolepropionic acid is shown to be a powerful antioxidant and has potential in the treatment for Alzheimer’s disease. In Vitro: 3-Indolepropionic acid is shown to be a powerful antioxidant and has potential in the treatment for Alzheimer’s disease . 3-Indolepropionic acid is a more potent scavenger of hydroxyl radicals than melatonin. Similar to melatonin but unlike other antioxidants, 3-Indolepropionic acid scavenges radicals without subsequently generating reactive and pro-oxidant intermediate compounds . It is also suggested that indolepropionic acid, a gut microbiota-produced metabolite, is a potential biomarker for the development of type 2 diabetes (T2D) that may mediate its protective effect by preservation of β-cell function .
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Cat. No.: HY-109030R
CAS No.: 1191995-00-2
Synonyms: HMS5552 (Standard)
Research Areas:  

Metabolic Disease

Dorzagliatin (Standard) is the analytical standard of Dorzagliatin. This product is intended for research and analytical applications. Dorzagliatin (HMS5552), a dual-acting glucokinase (GK) activator, improves glycaemic control and pancreatic β-cell function in type 2 diabetes .
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Cat. No.: HY-Q40876
CAS No.: 445000-45-3
Target:  

Calcium Channel

Research Areas:  

Metabolic Disease

BBT is an enhancer of impaired glucose-stimulated insulin secretion (GSIS). BBT exhibits anti-hyperglycemia activity, and protects β-cells from cytokine- or streptozotocin (STZ (HY-13753))-induced cell death in type 2 diabetes models. BBT acts function via cAMP/PKA and long-lasting (L-type) voltage-dependent Ca2+ channel/CaMK2 pathway .
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Cat. No.: HY-W104821
CAS No.: 603-45-2
Rosolic acid is a Michael acceptor molecule isolated from the rhizomes of Plantago asiatica L. Rosolic acid inhibits Keap1, promotes Nrf2 nuclear translocation, and upregulates HO-1 and NQO-1. Rosolic acid reduces ER stress markers PERK, ATF-6, GRP78, and CHOP, as well as oxidative stress, ROS production, inflammation, and apoptosis. Rosolic acid upregulates SOD, CAT, and GPx activities, induces angiogenesis and insulin secretion, and restores endothelial function and pancreatic beta cell protection under ER stress. Rosolic acid can be used in research on diabetes and endothelial dysfunction .
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